2 for the s orbital, 6 for p, 10 for d.
The order of sub-orbitals is as follows: 1s 2s, 2p, 3s, 3p, 4s, 3d
If you are asking about the number of electrons then it would be 8. The first shell can hold a maximum number of 2 electrons. The second and third shell would have a maximum of 8 electrons each.
The first shell of an atom can hold a maximum of 2 electrons.
A neutral silicon atom has 14 electrons, which are distributed among its electron shells according to the Aufbau principle. The first shell can hold up to 2 electrons, the second shell can hold up to 8 electrons, and the third shell can hold the remaining 4 electrons. Therefore, the distribution of electrons in silicon is 2 in the first shell, 8 in the second shell, and 4 in the third shell.
No atom can hold 18 electrons in its outer energy shell - there is the valence rule, stating that the maximum for the outer shell is 8 electrons.
The maximum number of electrons in the first energy shell of an atom is 2. This limitation is due to the shell's capacity to accommodate a maximum of one s orbital, which can hold a maximum of two electrons, each with opposite spins.
the number of electons found in each shell can be found by 2 n squared 1 shell would have 2 electrons
If you are asking about the number of electrons then it would be 8. The first shell can hold a maximum number of 2 electrons. The second and third shell would have a maximum of 8 electrons each.
The K shell of an atom can hold up to 2 electrons.
Yes. The shells of an atom have different limits for how many electrons they can hold depending on the size of the shell. For example, the limit of the first shell is just two electrons, but the bigger second shell can hold eight electrons.
The first shell of an atom can hold a maximum of 2 electrons.
A neutral silicon atom has 14 electrons, which are distributed among its electron shells according to the Aufbau principle. The first shell can hold up to 2 electrons, the second shell can hold up to 8 electrons, and the third shell can hold the remaining 4 electrons. Therefore, the distribution of electrons in silicon is 2 in the first shell, 8 in the second shell, and 4 in the third shell.
there are two electrons the first shell hold
The second shell is 2S, 2P which can hold 8 total (2+6).
The second electron shell of an atom can hold a maximum of 8 electrons.
The largest Bohr orbit of the uranium atom can hold up to 92 electrons, as uranium has 92 protons. Each orbit in an atom can hold a maximum number of electrons given by the formula 2n^2, where n is the principal quantum number of the orbit.
The third electron shell can hold a maximum of 18 electrons.
Shell 1: Two electrons Shell 2: Eight electrons Shell 3: Eight electrons Shell 4: Eighteen electrons